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Short Term Solutions for the Assessment of the Shear Capacity of Existing Prestressed Concrete Bridges

机译:既有预应力混凝土桥梁抗剪承载力评估的短期解决方案

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The demands on existing bridge structures have increased over the last decades due to rising traffic loads and will continue to rise in the future. In this research project, funded by the Federal Highway Research Institute of Germany, different refined shear design approaches for the shear assessment of existing bridges have been verified on a short term basis. For this, advanced scientific design procedures on the basis of the so-called Level 4 of the German guidelines for the recalculation of existing bridges were taken into account as well as recent research results. Afterwards, possible modifications of current design procedures and alternative design procedures have been worked out and were in part recommended to be included in an update of the German recalculation guidelines. Since the use of Level 4 methods is restricted to scientific institutions, these modified approaches were now be recommended for general use within Level 2 of the recalculation guidelines. By this, the assessment and refurbishment of reinforced and prestressed concrete bridges will become more efficient and economical. The modified and refined approaches were also exemplarily used on existing bridge structures to demonstrate their effectiveness for the shear assessment.
机译:在过去的几十年中,由于交通负荷的增加,对现有桥梁结构的需求不断增加,并且在未来还将继续增长。在这项由德国联邦公路研究所资助的研究项目中,已在短期内验证了用于对现有桥梁进行抗剪评估的各种改进的抗剪设计方法。为此,考虑了基于德国指南第4级中对现有桥梁进行重新计算的高级科学设计程序以及最新的研究结果。之后,对当前的设计程序和替代设计程序进行了可能的修改,并建议将其部分建议包含在德国重新计算指南的更新中。由于第4级方法的使用仅限于科学机构,因此现在建议在重新计算指南的第2级中将这些修改后的方法推荐用于一般用途。这样,对钢筋混凝土和预应力混凝土桥梁的评估和整修将变得更加高效和经济。经修改和改进的方法还可以示例性地用于现有桥梁结构,以证明其对剪切评估的有效性。

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